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Shape Modification of Water-in-CO2 Microemulsion Droplets through Mixing of Hydrocarbon and Fluorocarbon Amphiphiles

机译:碳氢化合物与碳氟化合物两亲物混合修饰CO 2 水包水型微乳液液滴的形状

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摘要

An oxygen-rich hydrocarbon (HC) amphiphile has been developed as an additive for supercritical CO (scCO). The effects of this custom-designed amphiphile have been studied in water-in-CO (w/c) microemulsions stabilized by analogous fluorocarbon (FC) surfactants, nFG(EO), which are known to form spherical w/c microemulsion droplets. By applying contrast-variation small-angle neutron scattering (CV-SANS), evidence has been obtained for anisotropic structures in the mixed systems. The shape transition is attributed to the hydrocarbon additive, which modifies the curvature of the mixed surfactant films. This can be considered as a potential method to enhance physicochemical properties of scCO through elongation of w/c microemulsion droplets. More importantly, by studying self-assembly in these mixed systems, fundamental understanding can be developed on the packing of HC and FC amphiphiles at water/CO interfaces. This provides guidelines for the design of fluorine-free CO active surfactants, and therefore, practical industrial scale applications of scCO could be achieved.
机译:已经开发出富氧烃(HC)两亲物作为超临界CO(scCO)的添加剂。已在由类似碳氟化合物(FC)表面活性剂nFG(EO)稳定的CO包水(w / c)微乳液中研究了这种定制设计的两亲物的作用,已知这些表面活性剂会形成球形w / c微乳液液滴。通过应用对比度变化小角中子散射(CV-SANS),已经获得了混合系统中各向异性结构的证据。形状转变归因于烃添加剂,其改变了混合表面活性剂膜的曲率。这可以被认为是通过延长w / c微乳液液滴来增强scCO的理化特性的潜在方法。更重要的是,通过研究这些混合系统中的自组装,可以对在水/ CO界面处的HC和FC两亲物的填充形成基本的了解。这为无氟CO活性表面活性剂的设计提供了指导,因此,可以实现scCO的实际工业规模应用。

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